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Electrochemical and computational study of gum exudates from Canarium schweinfurthii as green corrosion inhibitor for mild steel in HCl solution

机译:在HCl溶液中,从Canarium schweinfurthii的电化学和计算研究从Canarium schweinfurthii作为温和钢的绿色腐蚀抑制剂

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摘要

The inhibition efficiency of the corrosion on mild steel in acid by Canarium schweinfurthii (CS) gum as inhibitor has been studied using chemical techniques (thermometric, gasometric, spectrophotometric and weight loss) and electrochemical techniques (electrochemical impedance spectroscopy (EIS) and potentiodynamic polarization (PDP)). Scanning Electron Spectroscopy (SEM) was used to examine the surface morphology of mild steel samples both in the presence and absence of inhibitors at optimum conditions. Results obtained indicated that CS inhibited the corrosion of mild steel in HCl. The inhibition efficiency increases with increasing the inhibitor concentration but decreases with increasing the temperature. CS behaved as mixed type inhibitor retarding both cathodic and anodic reaction with high inhibition efficiency. Gas chromatography mass spectrometer (GCMS) spectrum of CS gum showed the presence of Nonacosane; 1-piperoylp; Stearic acid, 2-(hydroxymethyl)-2-nitropropane-1,3-diol, Stigmasta-5,22-dien-3-ol, dihex-5-en-2-yl phthalate, 9-octadecenoic acid, methyl ester,, 1-penta-decarecarboxylic and Oleic acid. Inhibition action of the gum gave a strong correlation with these phytochemicals in the gum. Phenomenon of physical adsorption was proposed for the inhibition and the process followed the Langmuir adsorption isotherm with very high negative values of the free energy of adsorption (ΔGads). Both the chemical and electrochemical results are in good agreement with each other while the surface studies reveal the formation of a smooth, dense protective layer in the presence of inhibitor. Quantum chemical computations of parameters associated with the electronic structures of specific components of the gum supported their inhibiting potentials.
机译:通过Canarium Schweinfurthii(Cs)胶作为抑制剂的耐酸中腐蚀腐蚀的抑制效率已经使用化学技术(温度计,胃分光光度法和体重减轻)和电化学技术(电化学阻抗谱(EIS)和电位极化极化( PDP))。扫描电子光谱(SEM)用于检查在最佳条件下是否存在和不存在抑制剂的存在和不存在的温和钢样品的表面形态。获得的结果表明,Cs抑制了HCl中低碳钢的腐蚀。随着抑制剂浓度的增加而增加,抑制效率增加,但随着升高的温度而降低。 CS表现为混合式抑制剂,延迟了高抑制效率的阴极和阳极反应。 Cs Gum的气相色谱质谱仪(GCMS)谱显示出非乙岩的存在; 1- piperoylp;硬脂酸,2-(羟甲基)-2-硝基丙烷-1,3-二醇,柱塞-5,22-DIEN-3-OL,Dihex-5-ZEN-2-YL邻苯二甲酸酯,9-十八烯酮,甲酯, ,1-戊叶羧酸羧酸和油酸。胶的抑制作用与口香糖中的这些植物化学物质产生了强烈的相关性。提出了物理吸附现象,用于抑制和该过程,然后沿Langmuir吸附等温线具有非常高的吸附能量(ΔGads)的负值。化学和电化学效果均匀彼此吻合良好,而表面研究揭示了在抑制剂存在下形成光滑,致密的保护层。与胶的特定部件的电子结构相关的参数的量子化学计算支持它们的抑制潜力。

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    Paul Ocheje Ameh;

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  • 年度 2018
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